02.2 Linear and nonlinear analysis in FEA/CAE

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  • เผยแพร่เมื่อ 30 พ.ค. 2019
  • In this video tutorial I tried to explain geometric, material & contact non-linearity. When it need to use non-linearity in simulation & when we can ignore non-linearity in simulation. Also discussed how stiffness matrix will affected by different type of non-linearity.
    To know more plz check playlists.
    For related questions & discussion you can contact me on 7891401376. or mail me gkn0504@gmail.com
    Telegram Link - t.me/joinchat/OL8CZhZnuJkiTei...
    Whatsapp Link1 - chat.whatsapp.com/FptnFPbifxM...
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ความคิดเห็น • 16

  • @MrGian91
    @MrGian91 3 ปีที่แล้ว +1

    amazing series, good job!

  • @civilacademia3831
    @civilacademia3831 4 ปีที่แล้ว +1

    Nice work!

  • @moussatwizere7795
    @moussatwizere7795 4 ปีที่แล้ว

    Thank you very much

  • @faisalsheikh8678
    @faisalsheikh8678 4 ปีที่แล้ว +1

    Thank you so much ❤️, beautifully explained.

    • @simtech0598
      @simtech0598  4 ปีที่แล้ว

      Always welcome.
      I suggest to go with all four videos of sequence.

  • @user-ov8sh7zr4w
    @user-ov8sh7zr4w 10 หลายเดือนก่อน

    Thank you for your nice explanation about non-linear analysis in Abaqus. I just want to know can we implement inbuilt plasticity model (isotropic hardening) without considering the effect of geometric nonlinearity, if yes could you please explain?

  • @shyamdev6928
    @shyamdev6928 4 ปีที่แล้ว +1

    Could you please explain, what will happen if we dont use geometric non linearity? How the geometry will behave.

    • @simtech0598
      @simtech0598  4 ปีที่แล้ว

      Dear,
      In geometric linear analysis stiffness matrix remains constant throughout the simulation..but in nonlinear geometry case stiffness matrix update for each increment.
      I suggest to go with all 4 videos of sequence.
      Apart from one example i explained in below video - th-cam.com/video/UzKDiW-YII4/w-d-xo.html
      Basically this video is about linear perturbation and general static step but it will surely help you to understand geometric linear and nonlinear Analysis.

  • @aukfaworld4792
    @aukfaworld4792 3 ปีที่แล้ว

    Dear Sir, could you explain how the calculation stop(identify failure) the process when it reaches the failure point(not fractured point). For material nonlinear analysis

    • @simtech0598
      @simtech0598  3 ปีที่แล้ว

      Dear,
      You need to define failure criteria and max limit in material.

    • @aukfaworld4792
      @aukfaworld4792 3 ปีที่แล้ว

      Thank you so much for replying

  • @RAHULKUMAR-vi4sl
    @RAHULKUMAR-vi4sl 3 ปีที่แล้ว +1

    0:38 how you know that you are working beyond the yield stress ?

    • @simtech0598
      @simtech0598  3 ปีที่แล้ว +1

      Dear,
      It depends on many factors such
      1. Application - design of office chair is in such a way that developed stresses should always within elastic limit..but on other hand vehicle chassis designed to absorb max shock energy...to improve passenger safety.
      2. Material - many material (brittle) don't have significant yielding before failure...you can design them as linear elastic material (not for fatigue analysis)
      3. Factor of safety and precision - Even high load application can be analysed with linear material assumption if significant FOS considered and we are not interested in yielding...all the way we want within elastic limit only.
      Etc.

    • @RAHULKUMAR-vi4sl
      @RAHULKUMAR-vi4sl 3 ปีที่แล้ว +1

      @@simtech0598 Thank you for the brief explanation. got it 👍.

  • @saiyadaliladkhan8425
    @saiyadaliladkhan8425 3 ปีที่แล้ว +1

    Dear sir,
    Please can u add me in the whatsapp group. I wanted get the knowledge about the non linear analysis.
    Regards,
    Saiyad
    Research scholar
    IIT Dharward

    • @simtech0598
      @simtech0598  3 ปีที่แล้ว

      Dear Saiyad,
      I already uploaded 4 video on nonlinear analysis. I suggest you to go through.
      Whatsapp group is full plz join us on telegram and Facebook groups. Link is in video discription.